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A Multiscroll Chaotic Attractors with Arrangement of Saddle-Shapes and Its Field Programmable Gate Array (FPGA) Implementation

机译:具有鞍形状的布置及其现场可编程门阵列(FPGA)实现的多卷混沌吸引子

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Based on the step function and signum function, a chaotic system which can generate multiscroll chaotic attractors with arrangement of saddle-shapes is proposed and the stability of its equilibrium points is analyzed. The under mechanism for the generation of multiscroll chaotic attractors and the reason for the arrangement of saddle shapes and being symmetric about y-axis are presented, and the rule for controlling the number of scroll chaotic attractors with saddle shapes is designed. Based on the core chips including Altera Cyclone IV EP4CE10F17C8 Field Programmable Gate Array and Digital to Analog Converter chip AD9767, the peripheral circuit and the Verilog Hardware Description Language program for realization of the proposed multiscroll chaotic system is constructed and some experimental results are presented for confirmation. The research result shows that the occupation of multipliers and Phase-Locked Loops in Field Programmable Gate Array is zero.
机译:基于阶跃功能和Signum函数,提出了一种混沌系统,其可以产生具有鞍形的布置的多段混沌吸引子,并分析其平衡点的稳定性。呈现了在多卷混沌吸引子的产生机制以及鞍形状的布置的原因,设计了控制与鞍形状的滚动混沌吸引子数量的规则。基于包括Altera Cyclone IV EP4CE10F17C8现场可编程门阵列和数字到模拟转换器芯片AD9767的核心芯片,构建了外设电路和Verilog硬件描述语言描述,用于实现所提出的多际混沌系统,并提出了一些实验结果进行了确认。研究结果表明,现场可编程门阵列中的乘数和锁相环的占用为零。

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